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首页> 外文期刊>Chemical engineering journal >Modelling transport phenomena and chemical reactions in automotive three-way catalytic converters
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Modelling transport phenomena and chemical reactions in automotive three-way catalytic converters

机译:在汽车三元催化转化器中模拟运输现象和化学反应

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This study concentrates on the external and internal mass transfer with multiple reactions in the catalytic layer of a three-way catalyst (TWC). A single channel model accounting for the species diffusion inside the washcoat using the effectiveness factor was developed. Validation and calibration of the model was achieved by comparing predictions against experimental data obtained previously by the same authors. The model was then applied to study the importance of both turbulent monolith structures and controlled washcoat structures on TWC conversions. The numerical results show that: (i) increasing the transport coefficients using turbulent monolith structures can produce either positive or negative effects on the TWC conversions; (ii) overall, the net effect of increasingthe transport coefficients on the TWC conversions is positive; (iii) at high inlet gas temperatures and high space velocities the turbulent monolith structures present important improvements in the TWC conversions; (iv) the TWC conversions can be significantly improved enhancing the transport properties of the porous washcoat structure; (v) enhancements in the transport properties of the washcoat structure have deeper impacts on the TWC conversions than improvements in the monolith channel structure.
机译:这项研究集中在三元催化剂(TWC)催化层中具有多个反应的外部和内部质量传递。建立了一个单通道模型,该模型考虑了使用有效性因子在载体涂层内部扩散的物种。通过将预测与同一作者先前获得的实验数据进行比较,可以实现模型的验证和校准。然后将该模型用于研究湍流整体结构和可控修补基面涂层结构对TWC转化的重要性。数值结果表明:(i)使用湍流整体结构增加输运系数可对TWC转化率产生正或负影响; (ii)总的来说,增加运输系数对TWC转化率的净影响是积极的; (iii)在高入口气体温度和高空速下,湍流整体结构在TWC转化率方面有重要改进; (iv)可以显着改善TWC转化率,从而提高多孔修补基面涂层结构的传输性能; (v)与整体通道结构的改进相比,修补基面涂层结构的传输性能的改进对TWC转化率具有更深的影响。

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